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Welcome to ESEC

2027 3rd International Conference on Energy Storage and Energy Conversion

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About

About ESEC

Currently, the global energy transition is entering a deeper phase. In 2025, global new energy storage installations exceeded 106 GW, with novel energy storage technologies shifting from a "lithium ion dominated" landscape to a "multi technology competition" – solid state batteries, sodium ion batteries, flow batteries, and iron air batteries are all flourishing; grid forming energy storage has transitioned from an option to a necessity, with penetration rates rising rapidly; the hydrogen energy industry has crossed the "valley of death", with the entire industrial chain value approaching the trillion yuan scale; and the deep integration of artificial intelligence with energy systems is reshaping the paradigms of energy storage operation and maintenance, intelligent dispatch, and material discovery. Against this backdrop, ESEC 2027 will provide an international stage for scholars from around the world to present the latest research achievements, discuss technological frontiers, and exchange academic ideas.

The 2027 3rd International Conference on Energy Storage and Energy Conversion (ESEC 2027) is scheduled to be held in Tongren, China, from June 11 to 13, 2027. It aims to provide a high quality academic exchange platform for scholars, engineers, and industry professionals in the global energy storage and energy conversion fields. The conference will focus on cutting edge research directions including energy storage materials, next generation battery technologies, hydrogen energy and fuel cells, grid forming energy storage, smart grids, and AI empowered energy, with the goal of advancing the energy transition and the realization of carbon neutrality goals.

ESEC 2027 will feature multiple presentation formats, including keynote speeches, invited forums, oral presentations, and poster sessions. All accepted papers will be submitted for indexing in major databases such as EI Compendex and Scopus. We cordially invite experts, scholars, engineers, and industry professionals from around the world to submit papers and participate in the conference, jointly promoting the innovative development of energy storage and energy conversion technologies, and contributing to the efficient utilization of clean energy and a sustainable future.

Important Dates

Important Dates

Full Paper

Submission Date

April

11

2027

Notification of

Acceptance Date

May

11

2027

Registration

Deadline

May

28

2027

Conference

Dates

June

11-13

2027

CFP

Topics

The topics of interest for submission include, but are not limited to:

📚︎Track 1: Advanced Energy Storage Materials and Next-Generation Battery Technologies

Solid-State Batteries and Hybrid Solid-Liquid Battery Technologies; 

Sodium-Ion Battery Technologies and Industrialization; 

Flow Battery Technologies and Applications; 

Metal–Air Batteries; 

Advanced Lithium-Ion Battery Materials and Processes; 

Supercapacitors and High-Power Energy Storage Devices; 

Novel Electrolyte and Electrode Material Design; 

Battery Interface Engineering and In Situ Characterization Techniques; 

Potassium-Ion Batteries and Multivalent-Ion Battery Technologies; 

Aqueous Batteries and Organic Battery Technologies

📚︎Track 2: Physical Energy Storage and Long-Duration Energy Storage Technologies

Compressed Air Energy Storage Systems and Technologies; 

Flywheel Energy Storage Technologies and Applications; 

Thermal Energy Storage Technologies; 

New Pumped Hydro Storage Technologies; 

Long-Duration Energy Storage System Integration and Optimization;

Hybrid Energy Storage System Design and Coordinated Control; 

Gravity Energy Storage Technologies; 

Multi-Energy-Flow Coupled Energy Storage Systems; 

Novel Physical Energy Storage Principles and Emerging Technologies

📚︎Track 3: Hydrogen Energy and Fuel Cells

Green Hydrogen Production Technologies; 

SOEC/SOFC High-Temperature Electrolysis and Fuel Cell Technologies; 

Hydrogen Storage and Transportation Technologies; 

Fuel Cell Systems and Applications; 

Next-Generation Fuel Cell Materials; 

Hydrogen–Electricity Synergy and Multi-Energy Coupling Systems; 

Green Hydrogen-to-Ammonia/Methanol and Industrial Applications; 

Direct Seawater Electrolysis and Unconventional Water-Source Hydrogen Production; 

Hydrogen Mobility and Heavy-Duty Applications

📚︎Track 4: Energy Storage Systems and Power Electronics

Battery Management Systems and Energy Management Systems; 

Power Conversion Systems and Grid-Forming Converters; 

Energy Storage System Safety Design, Thermal Management, and State Estimation; 

Large-Scale Energy Storage Power Station Planning, Design, and Operation; 

Wide-Bandgap Semiconductor Power Devices and Applications; 

Solid-State Transformers and Novel Power Conversion Topologies; 

High-Voltage Energy Storage System Technologies; 

Electric Vehicle Battery Second-Life Utilization; 

Energy Storage System Integration and Modular Design; 

Energy Storage System Fault Diagnosis and Lifetime Prediction

📚︎Track 5: Smart Grids and Renewable Energy Integration

Grid-Forming Energy Storage Technologies and Grid Support; 

Renewable Energy Generation Systems and Grid-Connection Technologies; 

High-Penetration Renewable Power Systems; 

Microgrids and Distributed Energy Systems; 

Virtual Power Plant Technologies and Applications; 

Source–Grid–Load–Storage Integration and Multi-Energy Complementary Systems; 

Flexible HVDC Transmission and HVDC Technologies; 

Power Quality and Grid Stability; 

Offshore Wind Power and Long-Distance Transmission Technologies; 

Novel Transmission, Distribution, and Smart Distribution Technologies

📚︎Track 6: AI-Empowered and Digitalized Energy

Artificial Intelligence in Energy Storage Systems; 

AI-Driven Intelligent Dispatching and Energy Management; 

Digital Twin Technologies in Energy Systems; 

Machine Learning for Battery Material Discovery and Performance Prediction; 

AI-Empowered Energy Storage Safety Early Warning and Intelligent Operation; 

Large Language Models in Energy Systems; 

Big Data and IoT in Smart Energy; 

Edge Computing and Cloud–Edge Collaborative Energy Management; Blockchain and Energy Trading Technologies; 

Computation–Electricity Synergy and Data Center Energy Storage

📚︎Track 7: Application Scenarios, Markets, and Sustainable Development

Electric Vehicles and V2G/V2H Vehicle-to-Grid Interaction Technologies; 

Commercial and Industrial Energy Storage and User-Side Applications; 

Zero-Carbon Parks and Integrated Energy Systems; 

Power-to-X and Sector Coupling Technologies; 

Battery Recycling and Circular Economy; 

Full Life-Cycle Carbon Footprint Assessment and Management; 

Energy Storage Participation in Electricity Markets and Business Models; 

Energy Storage Policies, Standards, and Regulations; 

New Energy Vehicle Drive Systems and Motor Control; 

Low-Altitude Economy and New Electrified Transportation; 

Noise, Vibration, and Electromagnetic Compatibility Technologies

Publication

Publication

All accepted full papers will be published in the conference proceedings and will be submitted to EI Compendex / Scopus  for indexing.

Note: All submitted articles should report original research results, experimental or theoretical, not previously published or under consideration for publication elsewhere. Articles submitted to the conference should meet these criteria. We firmly believe that ethical conduct is the most essential virtue of academics. Hence, any act of plagiarism or other misconduct is totally unacceptable and cannot be tolerated.

Supported by

Host

Tongren University

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Organizer

Organizer

School of Materials and Chemical Engineering, Tongren University

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